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Structure and mechanical behavior of in situ developed Mg2Si phase in magnesium and aluminum alloys – a review

机译:原位的结构和力学行为在镁和铝合金中发育Mg2SI相位 - 评论

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摘要

The demand for lightweight, high specific strength alloys has drastically increased in the last two decades. Magnesium and aluminum alloys are very suitable candidate materials. Research on alloys with an Mg _(2) Si phase started about three decades ago. The current scenario is that magnesium and aluminum alloys containing an Mg _(2) Si phase are very popular in the scientific community and extensively used in the automotive and aerospace industries. Mg _(2) Si is a very stable phase and exhibits excellent mechanical, thermal, electrochemical and tribological properties. This paper presents a brief review of Mg–Si binary alloys, and Mg–Si–Al and Al–Si–Mg alloys. Grain refinement methods and mechanical properties have been reported on lightweight alloys containing Mg and Si. The available results show that silicon reacts with magnesium and forms an intermetallic compound with the stoichiometric formula Mg _(2) Si. There is in situ formation of an Mg _(2) Si phase in Mg–Si, Mg–Si–Al and Al–Mg–Si alloys by the diffusion or precipitation process. The morphology and size of an in situ developed Mg _(2) Si phase depend on the synthesis route and base metal or matrix. In the liquid metallurgy process the precipitation sequence depends on the cooling rate. The morphology of the Mg _(2) Si phase depends on the precipitation sequence and the mechanical properties depend on the morphology and size of the Mg _(2) Si phase within the alloy matrix.
机译:在过去的二十年中,对轻质的需求大幅增加,在过去的二十年里大幅增加。镁和铝合金是非常合适的候选材料。大约三十年前的MG _(2)SI阶段的合金研究。目前的情况是含镁和含有Mg _(2)Si阶段的铝合金在科学界非常流行,广泛用于汽车和航空航天行业。 Mg _(2)Si是一个非常稳定的相位,具有优异的机械,热,电化学和摩擦学性质。本文介绍了对Mg-Si二元合金和Mg-Si-Al和Al-Si-Mg合金的简要述评。在含有Mg和Si的轻质合金上报道了晶粒细化方法和机械性能。可用的结果表明,硅与镁反应,形成与化学计量式Mg _(2)Si的金属间化合物。通过扩散或沉淀过程在Mg-Si,Mg-Si-Al和Al-Mg-Si合金中原位形成Mg _(2)Si相。原位的形态和大小发育Mg _(2)Si相取决于合成途径和基础金属或基质。在液体冶金过程中,沉淀序列取决于冷却速率。 Mg _(2)Si相的形态取决于沉淀序列,并且机械性能取决于合金基质内Mg _(2)Si相的形态和尺寸。

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